Field of the invention
[0001] The present invention refers to conveyor plants for moulding lines of confectionery
products, particularly of chocolate, in which a plurality of adjacent and spaced moulds
(or half-moulds) are moved step by step along a support and guide structure through
successive workstations (casting, vibration, demoulding etc.), by means of a motorised
conveyor device.
Prior art
[0002] In plants thus made, the motorised conveyor device is typically made up of a pair
of closed link chains or belts at whose upper branches the moulds are connected, in
a disconectable manner, during their movement along the line proceeding step by step
through the successive stations for moulding the products.
[0003] Examples of known conveyor plants of the abovementioned type are described and illustrated,
for example, in documents
EP-A1-0736257 and
EP-A1-0583740.
[0004] Typically, the moulds (or half-moulds) are made with respective cavities whose positioning
at the moulding stations must evidently be accurate to avoid production malfunctions
and the ensuing wastage.
[0005] In conventional conveyor plants of this type, the connection between the moulds (or
half-moulds) and the respective chains or conveyor belts is obtained by means of anchoring
members supported by the upper branches of the chains or belts, at predetermined intervals.
During operation, closed-link conveyor devices thus made are subjected to inevitable
stretching over time which, no matter how limited, shall fatally lead to inaccurate
positioning of the moulds with respect to the successive workstations.
[0006] Furthermore, such conventional conveyor systems, and in particular those employing
chains, are subjected to problems regarding dirt from the confectionery products along
the plant, for example in case of chocolate in fluid state, creams etc.
Summary of the invention
[0007] The object of the invention is that of overcoming such drawbacks.
[0008] According to the invention this object is mainly attained due to the fact that, according
to claim 1, the motorised conveyor device comprises:
- at least one longitudinal bar arranged along said support structure and bearing a
series of pushing members spaced like said moulds, said at least one bar being controllable
in rotation between a first angular position wherein said pushing members are inoperative
and a second angular position wherein said pushing members (12) engage said moulds
from the back, and
- actuator means for controlling the advancement, by one step, of said at least one
bar when it is arranged in said second angular position and its return to the initial
position when it is arranged in said first angular position.
[0009] Further secondary characteristics of the invention are defined in the dependent claims.
Brief description of the drawings
[0010] Now, the invention shall be described in detail with reference to the attached drawings,
strictly provided for exemplifying and non-limiting purposes, wherein:
- figure 1 is a top plan schematic view of an example of a conveyor plant for moulding
lines of confectionery products according to the invention,
- figure 2 is a schematic perspective view showing one of the rectilinear sections of
the conveyor line of figure 1,
- figure 3 is an enlarged sectional view according to line III-III of figure 2,
- figure 4 shows an enlarged detail of figure 2,
- figure 5 shows an enlarged top plan view of one of the curved connection sections
between two rectilinear sections of the line,
- figure 6 is a vertical and schematic sectional view according to line VI-VI of figure
5,
- figure 7 shows a first variant of figure 5,
- figure 8 shows a second variant of figure 5, and
- figure 9 is a perspective view of figure 8.
Detailed description of the invention
[0011] Initially referring to figure 1, a conveyor plant for moulding lines of confectionery
products according to the invention is generally indicated, for exemplification purposes,
with 1. According to such example, the conveyor plant 1 includes two longer rectilinear
sections 1a, 1b and two shorter rectilinear sections 1c, 1d connected together by
curved sections 1e, 1f, 1g and 1h.
[0012] It should be observed that the general configuration of the conveyor plant 1 could
be different from the one illustrated, and also that the line could also include two
or more plants analogous to the represented one.
[0013] Figures 2, 3 and 4 illustrate in a more detailed manner the rectilinear section 1a
with the respective details: however, the following description is also applied in
a manner identical to the other sections 1b, 1c and 1d of the conveyor plant 1.
[0014] Section 1a essentially comprises a base framework 2 fixed onto which - at the upper
part - by means of columns 3, is a guide and support structure generally indicated
with 4, moveable along which is a plurality of moulds 5 which - when operating - are
moved step by step along such structure 4 through successive work stations, not illustrated.
[0015] The moulds 5, which can also be made up of half-moulds, are schematically represented
as simple plates: obviously their configuration shall include cavities of various
forms and shapes corresponding to those of the confectionery products intended to
be moulded along the line.
[0016] The moulds 5 are placed, along each of the rectilinear sections 1a, 1b, 1c, 1d briefly
spaced from each other, on longitudinal sliding guides 6 with the respective lateral
edges facing a pair of lateral guide boards 7. Such lateral guide boards 7 conveniently
bear friction elements 8, for example made up of elastic adjustable members in friction
contact with the lateral edges of the moulds 5. The adjustment of the friction may
for example be performed by adjusting the supports of the boards 7, that serve as
levers.
[0017] The sliding translation of the moulds 5 along the support guides 6 of the structure
4 is controlled, according to the distinctive aspect of the invention, without requiring
closed link chains or belts usually used in the conventional conveyor plants of the
same type. Provided for such purpose, beneath the plane defined by the two sliding
guides 6, are two longitudinal bars 9 supported by respective support blocks 10 mounted
rotating on a pair of longitudinal profiles 11 moveable along the sides of the structure
4.
[0018] Each longitudinal bar 9 bears a plurality of curved lateral arms 12 projecting laterally
outwards and spaced from each other by a measurement corresponding to the distance
between the moulds 5.
[0019] The bars 9 rotate integrated with the respective blocks 10 between an angular idle
position represented in the drawings, wherein the arms 11 do not interfere with the
moulds 5, and an operative position wherein such arms 12 are arranged immediately
behind the rear sides (referring to the direction of advancement indicated by the
arrows F in figure 1) of the moulds 5. The rotation of each bar 9 between such angular
positions is controlled through one or more motorised actuators for example made up,
like in the case of the illustrated example, a fluid jack 13.
[0020] The support blocks 10, and hence the bars 9 with the latter rotating, are - as mentioned
- supported by profiles 11 which have a track-shaped configuration engaged into respective
idle rollers 14 supported by the opposite sides of the structure 4.
[0021] The profiles 11 are controlled in alternating linear motion by means or fan electric
motor, for example of the brushless type not shown in the drawings, and a belt drive
15, synchronised with the rotation of the bars 9.
[0022] During operation, in order to perform the joint movement of the moulds 5 along the
section 1a, the longitudinal bars 9 are first rotated from the lowered in operative
position to the raised operative position, in such a manner - as mentioned - to arrange
the respective curved arms 12 within the space comprised between each mould 5 and
the adjacent mould. At the end of such rotation, the bars 9 are translated forward
by a degree corresponding to the desired step, maintain the respective curved arms
12 in the raised operative position. Thus, such arms 12 operate like flights or pushers,
in such a manner to correspondingly translate the moulds 5 from one station to the
successive station.
[0023] At the end of the movement, the bars 9 are rotated once again to return the curved
arms 12 to the lowered inoperative position, and hence the profiles 11 are translated
backwards to the initial position.
[0024] The description outlined above referring to the rectilinear branch 1a of the line
is similarly applied also to the other rectilinear branches 1b, 1c and 1d.
[0025] Regarding the connection sections 1e-1h, the invention provides for the arrangement
schematically represented in figures 5 and 6, as well as in the variants of figure
7 and figures 8 and 9, referring to the curved section 1e, it being intended that
the description is applied in an analogous manner to all the curved sections of the
line.
[0026] The curved section 1e the restraint and sliding curved guides 16 along which the
moulds 5 are moveable according to a 90° arched trajectory by means of rotating arms
17. Such rotating arms 17, whose number varies from one to three or more depending
on the size of the moulds 5, are supported by a vertical shaft 18 controlled, through
a motorised group 19 supported by the base framework 2, having an alternating rotational
motion to rotate the arm/s 17 between a start orthogonal position at the exit from
the rectilinear section 1a, and an orthogonal arrival position at the entrance of
the rectilinear section 1c of the line. The or each arm 17 is provided with a thrust
unit 19 adapted to cooperate from behind with the moulds 5 to push them from the exit
of the section 1a at the entrance of the section 1c, along the guides 16, due to the
corresponding rotation of the arm 17. The vertical movement of the thrust unit 19
is controlled for example by means of a fluid actuator 20.
[0027] Alternatively, the entire arm 17 with the thrust group 19 could be moved vertically
along the vertical shaft 18, respectively at the beginning and at the end of its angular
travel between the abovementioned start and arrival positions.
[0028] Figure 7 illustrates a variant of the curved section 1e, obviously applicable also
to other curved sections 1f-1h, wherein the guides 16 are removed and the or each
rotating arm 17 bears a motorised gripping device 21, for example of the moveable
clamp type, adapted to hold and block - at the lower part - each mould 5 during the
transfer rotation between the exit of the rectilinear section 1a and the entrance
of the rectilinear section 1c.
[0029] In the case of the variant illustrated in figures 8 and 9 the curved section 1e,
and each of the other curved sections 1f-1h, comprises a base 23 which supports the
guides 16, having a C-shaped transverse section in this case, and it is made with
a curved slit opening 24 through which an upright 25 is moveable connected to a curved
plate bearing, 30° angular intervals, three pairs of pusher projections 27. The plate
26 is moveable angularly in an alternating manner, through a motor 18, and the pushers
27 are moveable vertically synchronised with the alternating movement of the plate
26, for example through fluid actuators, between a lowered inoperative position and
a raised operative position wherein they cooperate from behind with the moulds 5 to
push them from the exit of the section 1a to the entrance of the section 1c, along
the guides 16.
[0030] Obviously, the embodiments and the construction details as illustrated strictly for
simplification purposes in the drawings may widely vary with respect to the description
and illustration provided above, without for this reason departing from the scope
of the present invention as defined in the following claims.
[0031] Thus, for example, though the conveyor device described referring to the rectilinear
sections 1a-1d of the line 1 employs two longitudinal bars 9 with the respective thrust
arms 12, it is also conceivable to implement an embodiment provided with a single
longitudinal bar arranged centrally beneath the movement path of the moulds.
[0032] Furthermore, one or more rectilinear branches 1a-1d may be made up of two or more
sections, some or all of them motorised, joined together by means of methods not illustrated
but known to a man skilled in the art.
1. Conveyor plant (1) for moulding lines of confectionery products, particularly of chocolate,
wherein a plurality of moulds (5) adjacent and spaced are moved step by step along
a guide and support structure (4) through successive workstations by means of a motorised
conveyor device,
characterised in that said motorised conveyor device comprises:
- at least one longitudinal bar (9) arranged along said support structure (4) and
bearing a series of pushing members (12) spaced like said moulds (5), said at least
one bar (9) being controllable in rotation between a first angular position wherein
said pushing members (12) are inoperative and a second angular position wherein said
pushing members (12) engage said moulds from the rear (5), and
- actuator means (15) for controlling the advancement - by one step - of said at least
one bar (9) when it is arranged in said second angular position and its return to
the initial position when it is arranged in said first angular position.
2. Conveyor plant according to claim 1, characterised in that said guide and support structure (4) includes a pair of longitudinal supports (6)
for the sliding of the moulds (5) and in that said motorised device comprises a pair of said longitudinal bars (9) located beneath
the plane of said supports (6).
3. Conveyor plant according to claim 1 or 2, characterised in that said thrust members consist in curved arms (12).
4. Conveyor plant according to any one of the preceding claims, characterised in that said guide and support structure (4) includes lateral friction members (8) for restraining
said moulds (5).
5. Conveyor plant according to claim 4, characterised in that said friction restraint members (8) are adjustable.
6. Conveyor plant according to one or more of the preceding claims, characterised in that said at least one longitudinal bar (9) is supported in a rotating manner by a respective
longitudinal profiled element (11) moveable in alternating rectilinear motion along
said guide and support structure (4).
7. Conveyor plant according to claim 6, characterised in that said longitudinal profiled element is supported by said structure (4) through rolling
members (14).
8. Conveyor plant according to one or more of the preceding claims, characterised in that it comprises at least one first and one second rectilinear section (1a, 1c) arranged
at 90° from each other and interconnected by a connection section (1e) including means
(17, 19; 17, 21) for transferring moulds (5) from said first rectilinear section (1a)
to said second rectilinear section (1c).
9. Conveyor plant according to claim 8, characterised in that said transfer means include conveyor means (17; 26) moveable in alternating angular
motion around a vertical axis (18) for a 90° travel and bearing gripping means (19;
21; 27) moveable between an inoperative condition wherein they do not interfere with
the moulds (5) and an inoperative position wherein the moulds (5) are pushed by said
support means (17; 26).
10. Conveyor plant according to claim 9, characterised in that said support means comprise a plurality of angularly moveable arms (17).
11. Conveyor plant according to claim 8, characterised in that said support means comprise a plate (26) bearing three pairs of gripping projections
moveable vertically between a raised operative position and a lowered inoperative
position synchronised with the alternating movement of said plate (26).
12. Conveyor plant according to claim 8, characterised in that said rectilinear sections (1a, 1c) include a plurality of sections, all or only some
of which are motorised.